Air conditioner control method and device, storage medium and air conditioner
By setting up an air volume regulating valve between the air distribution device of the air conditioner and the air outlet, the temperature unbalanced problem of air supply in multiple areas of the air conditioner is solved, and the air supply in multiple areas of the air conditioner is achieved, which improves the user experience.
Patent Information
- Application Number
- CN202510979981.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2025-09-02
AI Technical Summary
When existing air conditioners are supplied with air in multiple areas, they are prone to temperature imbalance, especially when there are many areas. In some areas, high wind speed, high wind volume, high wind volume, and low wind speed, low wind volume, leading to overheating.
An air volume control valve is installed on the communication pipeline between the air distribution device of the air conditioner and the air outlet. By receiving the air speed and regional ambient temperature of the air outlet, the average temperature value is calculated, and the valve opening of the air volume control valve is adjusted to control the air speed and temperature difference within the target range.
It realizes balanced air supply in multiple areas, improves user experience, and avoids cold thorns or overheating problems in some areas.
Smart Images

Figure CN120576478A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of air conditioning, and in particular to an air conditioning control method, device, storage medium and air conditioning. Background Art
[0002] Air conditioners, taking ducted air conditioners as an example, usually need to supply air to multiple areas. However, currently, multi-area air supply usually adopts a static air volume distribution method to supply air to each area. For example, an air distribution device is used to distribute a fixed air volume from the ducted air conditioner output to each area. Under the current method, the problem of temperature imbalance in multiple areas is prone to occur, which is particularly serious when there are a large number of areas. For example, some areas have high wind speed and large air volume, which makes users feel cold, while some areas have low wind speed and small air volume, which makes users overheat. Summary of the Invention
[0003] The embodiments of the present application provide an air conditioning control solution that can reliably achieve temperature-balanced air supply in multiple zones, thereby improving user experience.
[0004] The embodiments of this application provide the following technical solutions:
[0005] According to one embodiment of the present application, an air conditioning control method is provided, wherein the air conditioner includes an air distribution device and a plurality of air outlets, and air volume regulating valves are respectively arranged on the connecting pipes between the air distribution device and each of the air outlets, and the plurality of air outlets are respectively arranged in a plurality of areas; the method includes: receiving the wind speed of each of the air outlets; adjusting the air outlet opening of each of the air outlets according to the wind speed of each of the air outlets, so that the wind speed of each of the air outlets is within a preset range; receiving the regional ambient temperature of each of the areas, and calculating the temperature average of the regional ambient temperatures of the plurality of areas; adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average, so that the temperature difference is within a target temperature range.
[0006] In some embodiments of the present application, adjusting the valve opening of each of the air volume control valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average value includes: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is greater than a first temperature value, calculating a first opening according to the formula S1=a*k1*[(T-Tv) / Tv]*100%, where S1 refers to the first opening, a refers to the initial opening, k1 refers to a first preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average value;
[0007] The valve opening of the air volume regulating valve is increased from the initial opening to the first opening.
[0008] In some embodiments of the present application, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature of each area and the temperature average value includes: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is less than the second temperature value, calculating the second opening according to the formula S2=a*k2*[(T-Tv) / Tv]*100%, wherein S2 refers to the second opening, a refers to the initial opening, k2 refers to the second preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average value; reducing the valve opening of the air volume regulating valve from the initial opening to the second opening.
[0009] In some embodiments of the present application, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature of each area and the temperature average value includes: when the air conditioner is in heating mode and the temperature difference is greater than the first temperature value, calculating the third opening according to the formula S3=a*k3*[(T-Tv) / Tv]*100%, wherein S3 refers to the third opening, a refers to the initial opening, k3 refers to the third preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average value; reducing the valve opening of the air volume regulating valve from the initial opening to the third opening.
[0010] In some embodiments of the present application, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature of each area and the temperature average value includes: when the air conditioner is in heating mode and the temperature difference is less than the second temperature value, calculating the fourth opening according to the formula S4=a*k4*[(T-Tv) / Tv]*100%, wherein S4 refers to the fourth opening, a refers to the initial opening, k4 refers to the fourth preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average value; adjusting the valve opening of the air volume regulating valve from the initial opening to the fourth opening.
[0011] In some embodiments of the present application, the valve opening of each air volume regulating valve is adjusted according to the temperature difference between the regional ambient temperature of each area and the temperature average value, including: when the temperature difference is greater than the second temperature value and less than the first temperature value, maintaining the valve opening of the air volume regulating valve at the current opening.
[0012] In some embodiments of the present application, before adjusting the valve opening of each air volume control valve according to the temperature difference between the regional ambient temperature of each area and the temperature average value, the method further includes: adding a target adjustment value to the temperature difference average value to obtain the first temperature value; subtracting the target adjustment value from the temperature difference average value to obtain the second temperature value, and the target temperature range is from the first temperature value to the second temperature value.
[0013] According to one embodiment of the present application, an air-conditioning control device, the air-conditioning device includes an air distribution device and a plurality of air outlets, air volume regulating valves are respectively arranged on the connecting pipes between the air distribution device and each of the air outlets, and the plurality of air outlets are respectively arranged in a plurality of areas; the device includes: a wind speed receiving module, used to: receive the wind speed of each of the air outlets; an air outlet opening regulating module, used to: adjust the air outlet opening of each of the air outlets according to the wind speed of each of the air outlets, so that the wind speed of each of the air outlets is within a preset range; a temperature receiving module, used to: receive the regional ambient temperature of each of the areas; a temperature processing module, used to: calculate the temperature average of the regional ambient temperatures of the plurality of areas; a valve opening regulating module, used to: adjust the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average, so that the temperature difference is within a target temperature range.
[0014] According to another embodiment of the present application, a storage medium stores a computer program thereon. When the computer program is executed by a processor of an air conditioner, the air conditioner executes the method described in the embodiment of the present application.
[0015] According to another embodiment of the present application, an air conditioner may include: a memory storing a computer program; and a processor reading the computer program stored in the memory to execute the method described in the embodiment of the present application.
[0016] According to another embodiment of the present application, a computer program product or computer program includes computer instructions stored in a computer-readable storage medium. A processor of an air conditioner reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the air conditioner to perform the methods provided in the various optional implementations described in the embodiments of the present application.
[0017] In an embodiment of the present application, the air conditioner includes an air distribution device and multiple air outlets, and air volume regulating valves are respectively arranged on the connecting pipes between the air distribution device and each of the air outlets, and the multiple air outlets are respectively arranged in multiple areas; the air conditioning control method includes: receiving the wind speed of each of the air outlets; adjusting the air outlet opening of each of the air outlets according to the wind speed of each of the air outlets, so that the wind speed of each of the air outlets is within a preset range; receiving the regional ambient temperature of each of the areas, and calculating the temperature average of the regional ambient temperatures of the multiple areas; adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average, so that the temperature difference is within the target temperature range.
[0018] In this manner, an air volume regulating valve is provided on the connecting pipe between the air distribution device and each air outlet, and the air outlet opening of each air outlet is adjustable. The air outlet opening is adjusted according to the wind speed of each air outlet, so that the wind speed of each air outlet is within a preset range. Furthermore, the valve opening of each air volume regulating valve is adjusted according to the temperature difference between the regional ambient temperature and the average temperature of each area, so that the temperature difference is within the target temperature range. This can reliably avoid high wind speed and large air volume in some areas and low wind speed and small air volume in other areas, and achieve temperature balance in multiple areas. This ensures that the air supply is temperature-balanced in multiple areas, improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without creative work.
[0020] Figure 1 A flow chart of an air conditioning control method according to an embodiment of the present application is shown.
[0021] Figure 2 A schematic diagram of an air conditioner installation layout according to an embodiment of the present application is shown.
[0022] Figure 3 A block diagram of an air conditioning control device according to an embodiment of the present application is shown.
[0023] Figure 4 A block diagram of an air conditioner according to an embodiment of the present application is shown. DETAILED DESCRIPTION
[0024] The present disclosure will be further described in detail below in conjunction with the accompanying drawings and examples. It should be understood that the examples provided herein are merely for explaining the present disclosure and are not intended to limit the present disclosure. In addition, the examples provided below are partial examples for implementing the present disclosure, rather than providing all examples for implementing the present disclosure. In the absence of conflict, the technical solutions described in the examples of the present disclosure may be implemented in any combination.
[0025] It should be noted that, in the embodiments of the present disclosure, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a method or apparatus comprising a series of elements includes not only the elements explicitly stated, but also other elements not explicitly listed, or also includes elements inherent to the implementation of the method or apparatus. In the absence of further restrictions, an element defined by the sentence "comprising a ..." does not exclude the presence of other related elements (such as steps in the method or units in the apparatus, for example, a unit may be part of a circuit, part of a processor, part of a program or software, etc.) in the method or apparatus comprising the element.
[0026] For example, the air-conditioning control method provided in the embodiment of the present disclosure includes a series of steps, but the air-conditioning control method provided in the embodiment of the present disclosure is not limited to the recorded steps. Similarly, the air-conditioning control device provided in the embodiment of the present disclosure includes a series of units, but the device provided in the embodiment of the present disclosure is not limited to including the units explicitly recorded, and may also include units that need to be set up to obtain relevant information or perform processing based on information.
[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the present disclosure pertains. The terms used herein are for the purpose of describing specific embodiments only and are not intended to limit the present disclosure.
[0028] It is understandable that in the specific implementation of this application, relevant data is involved. When the embodiments in this application are applied to specific products or technologies, user permission or consent is required, and the collection, use and processing of relevant data must comply with relevant laws, regulations and standards.
[0029] Air conditioners, taking ducted air conditioners as an example, usually need to supply air to multiple areas. However, currently, multi-area air supply usually adopts a static air volume distribution method to supply air to each area. For example, an air distribution device is used to distribute a fixed air volume from the ducted air conditioner output to each area. Under the current method, the problem of temperature imbalance in multiple areas is prone to occur, which is particularly serious when there are a large number of areas. For example, some areas have high wind speed and large air volume, which makes users feel cold, while some areas have low wind speed and small air volume, which makes users overheat.
[0030] To solve these problems, this application provides the following air conditioning control solution, which can reliably achieve temperature-balanced air supply in multiple zones and improve user experience.
[0031] The following describes in detail the various embodiments of the air conditioning control solution provided in this application.
[0032] Figure 1A flowchart schematically illustrates an air conditioner control method according to one embodiment of the present application. The method may be executed by a control module with processing capabilities. This control module may be installed in devices such as air conditioners, remote controls, wired controllers, mobile phones, computers, smart watches, and other household appliances. The control module may include at least a memory and a processor.
[0033] In one embodiment of the present application, a control module, which executes the air conditioner control method, is specifically disposed in the air conditioner. The control module may include a processor and a memory. Specifically, the air conditioner includes the processor and the memory, and the memory stores a computer program. Thus, the processor in the air conditioner can read the computer program stored in the memory to execute the methods of various embodiments of the present application.
[0034] The air conditioner includes an air distribution device and a plurality of air outlets, and air volume regulating valves are respectively provided on the connecting pipes between the air distribution device and each air outlet, and the plurality of air outlets are respectively provided in a plurality of areas. Figure 2 As shown, air conditioner 200 includes an air distribution device 210, an air outlet 221, an air outlet 222, an air outlet 223, and an air outlet 224. An air volume regulating valve 231 is provided on the connecting pipe 251 between air distribution device 210 and air outlet 221, an air volume regulating valve 232 is provided on the connecting pipe 252 between air distribution device 210 and air outlet 222, an air volume regulating valve 233 is provided on the connecting pipe 253 between air distribution device 210 and air outlet 223, and an air volume regulating valve 234 is provided on the connecting pipe 254 between air distribution device 210 and air outlet 224. Air outlet 221, air outlet 222, air outlet 223, and air outlet 224 are respectively arranged in areas 241, 242, 243, and 244. The air outlet opening (i.e., the air outlet area) of each air outlet is adjustable. In addition, the air conditioner 200 may further include a temperature control device (e.g., a ducted air conditioner) 260. The cold or hot air blown out by the temperature control device (e.g., a ducted air conditioner) 260 is distributed to each air outlet via an air distribution device 210. The air distribution device 210 may be an air distribution box, which may be equipped with a guide baffle to reduce airflow turbulence losses.
[0035] like Figure 1 As shown, the air conditioning control method may include steps S110 to S140.
[0036] Step S110, receiving the wind speed of each air outlet;
[0037] Step S120, adjusting the opening of each air outlet according to the wind speed of each air outlet so that the wind speed of each air outlet is within a preset range;
[0038] Step S130, receiving the regional ambient temperature of each area, and calculating the average temperature of the regional ambient temperatures of the multiple areas;
[0039] Step S140 , adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the average temperature of each area, so that the temperature difference is within the target temperature range.
[0040] By setting a wind speed sensor at each air outlet (for example, a hot film anemometer (range 0.1-5m / s, accuracy ±0.05m / s), which can be installed at the throat of the air outlet), the wind speed at the air outlet detected by the wind speed sensor can be received in real time.
[0041] For each air outlet, the air outlet opening can be adjusted based on the wind speed at the air outlet so that the wind speed at the air outlet is within a preset range. For example, the air outlet opening of air outlet 221 can be adjusted based on the wind speed V1 at air outlet 221 so that the wind speed V1 at air outlet 221 is within a preset range. The air outlet opening of air outlet 222 can be adjusted based on the wind speed V2 at air outlet 222 so that the wind speed V2 at air outlet 222 is within a preset range.
[0042] Among them, the preset range can be set according to actual conditions, for example, the preset range can be 1.5m / s-2.5m / s. Each air outlet (Variable Area Diffuser, VAD) has a specific air outlet opening adjustment function. For example, a servo motor-driven shutter array can be integrated in the air outlet, and the servo motor drives the shutter array to adjust its air outlet opening (that is, the air outlet area). The adjustment range of the air outlet opening can be set according to actual conditions, such as the adjustment range can be 20%-100%.
[0043] After adjusting the wind speed at each air outlet to within a preset range, the system further receives the regional ambient temperature of each zone and calculates the average of the regional ambient temperatures for the multiple zones. For example, if the regional ambient temperatures for the multiple zones are T1, T2, T3, ..., and Tn, the average temperature Tv = (T1 + T2 + T3 + ... + Tn) / n.
[0044] According to the temperature difference between the regional ambient temperature and the average temperature of each area, the valve opening of each air volume control valve is adjusted so that the temperature difference between the regional ambient temperature and the average temperature of each area is within the target temperature range, thereby reliably balancing the temperatures of multiple areas. For example, according to the temperature difference between the regional ambient temperature T1 of area 241 and the temperature average value Tv, the valve opening of the air volume regulating valve 231 set on the connecting pipe 251 can be adjusted; according to the temperature difference between the regional ambient temperature T2 of area 242 and the temperature average value Tv, the valve opening of the air volume regulating valve 232 set on the connecting pipe 252 can be adjusted; according to the temperature difference between the regional ambient temperature T3 of area 243 and the temperature average value Tv, the valve opening of the air volume regulating valve 233 set on the connecting pipe 253 can be adjusted; according to the temperature difference between the regional ambient temperature T4 of area 244 and the temperature average value Tv, the valve opening of the air volume regulating valve 234 set on the connecting pipe 254 can be adjusted, thereby adjusting the air volume delivered to each air outlet by the air distribution device 210, so that the regional ambient temperature in multiple areas is within the target temperature range, thereby making the temperature of multiple areas balanced.
[0045] In this manner, an air volume regulating valve is provided on the connecting pipe between the air distribution device and each air outlet, and the air outlet opening of each air outlet is adjustable. The air outlet opening is adjusted according to the wind speed of each air outlet, so that the wind speed of each air outlet is within a preset range. Furthermore, the valve opening of each air volume regulating valve is adjusted according to the temperature difference between the regional ambient temperature and the average temperature of each area, so that the temperature difference is within the target temperature range. This can reliably avoid high wind speed and large air volume in some areas and low wind speed and small air volume in other areas, and achieve temperature balance in multiple areas. This ensures that the air supply is temperature-balanced in multiple areas, improving the user experience.
[0046] Described below Figure 1 When performing air conditioning control under the embodiment, further optional specific embodiments are provided for each step performed.
[0047] In one embodiment, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the temperature average of each area may include: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is greater than the first temperature value, calculating the first opening according to the formula S1=a*k1*[(T-Tv) / Tv]*100%, wherein S1 refers to the first opening, a refers to the initial opening, k1 refers to the first preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; adjusting the valve opening of the air volume regulating valve from the initial opening to the first opening.
[0048] For example, when the air conditioner 200 is in cooling mode or air supply mode, and the temperature difference ΔT1 between the regional ambient temperature (T=T1) of area 241 and the temperature average value Tv is greater than the first temperature value, at this time, the first opening is first calculated according to the formula S1=a*k1*[(T-Tv) / Tv]*100%, wherein S1 refers to the first opening, a refers to the initial opening (at this time, a is specifically the initial opening of the air volume regulating valve 231 set on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in the area 241), k1 refers to the first preset coefficient, T refers to the regional ambient temperature (at this time T=T1), Tv refers to the temperature average, and the initial opening is the pre-set valve opening.
[0049] Furthermore, the valve opening of the air volume regulating valve 231 provided on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in the area 241 is increased from the initial opening a to the first opening S1, and then the valve opening of the air volume regulating valve 231 after adjustment is equal to a+S1.
[0050] Similarly, when the air conditioner 200 is in cooling mode or air supply mode, and the temperature difference between the regional ambient temperature (T=T2 or T3, etc.) and the temperature average value Tv of other areas (such as area 242 or area 243, etc.) is greater than the first temperature value, the valve opening of the air volume regulating valve set on the connecting pipe between the air outlet and the air distribution device in other areas (such as area 242 or area 243, etc.) is also adjusted.
[0051] In the manner of this embodiment, when the air conditioner is in cooling mode or air supply mode and the temperature difference is greater than the first temperature value, the temperature difference can be accurately and reliably adjusted to be within the target temperature range.
[0052] In one embodiment, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the temperature average of each area may include: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is less than the second temperature value, calculating the second opening according to the formula S2=a*k2*[(T-Tv) / Tv]*100%, wherein S2 refers to the second opening, a refers to the initial opening, k2 refers to the second preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; reducing the valve opening of the air volume regulating valve from the initial opening to the second opening.
[0053] For example, when the air conditioner 200 is in cooling mode or air supply mode, and the temperature difference ΔT1 between the regional ambient temperature (T=T1) of area 241 and the temperature average value Tv is less than the second temperature value, at this time, the second opening is first calculated according to the formula S2=a*k2*[(T-Tv) / Tv]*100%, where S2 refers to the second opening, a refers to the initial opening (at this time, a is specifically the initial opening of the air volume regulating valve 231 set on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in area 241), k2 refers to the second preset coefficient, T refers to the regional ambient temperature (at this time T=T1), Tv refers to the temperature average, and the initial opening is the pre-set valve opening.
[0054] Furthermore, the valve opening of the air volume regulating valve 231 provided on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in the area 241 is reduced from the initial opening a to the second opening S2, and then the valve opening of the air volume regulating valve 231 after adjustment is equal to a-S2.
[0055] Similarly, when the air conditioner 200 is in cooling mode or air supply mode, and the temperature difference between the regional ambient temperature (T=T2 or T3, etc.) and the temperature average value Tv of other areas (such as area 242 or area 243, etc.) is less than the second temperature value, the valve opening of the air volume regulating valve set on the connecting pipe between the air outlet and the air distribution device in other areas (such as area 242 or area 243, etc.) is also adjusted.
[0056] In the manner of this embodiment, when the air conditioner is in cooling mode or air supply mode and the temperature difference is less than the second temperature value, the temperature difference can be accurately and reliably adjusted to be within the target temperature range.
[0057] In one embodiment, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the temperature average of each area can include: when the air conditioner is in heating mode and the temperature difference is greater than the first temperature value, calculating the third opening according to the formula S3=a*k3*[(T-Tv) / Tv]*100%, wherein S3 refers to the third opening, a refers to the initial opening, k3 refers to the third preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; reducing the valve opening of the air volume regulating valve from the initial opening to the third opening.
[0058] For example, when the air conditioner 200 is in heating mode, and the temperature difference ΔT1 between the regional ambient temperature (T=T1) of area 241 and the temperature average value Tv is greater than the first temperature value, at this time, the third opening is first calculated according to the formula S3=a*k3*[(T-Tv) / Tv]*100%, wherein S3 refers to the third opening, a refers to the initial opening (at this time, a is specifically the initial opening of the air volume regulating valve 231 set on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in area 241), k3 refers to the second preset coefficient, T refers to the regional ambient temperature (at this time T=T1), Tv refers to the temperature average, and the initial opening is the pre-set valve opening.
[0059] Furthermore, the valve opening of the air volume regulating valve 231 provided on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in the area 241 is reduced from the initial opening a to the third opening S3, and then the valve opening of the air volume regulating valve 231 after adjustment is equal to a-S3.
[0060] Similarly, when the air conditioner 200 is in heating mode, and the temperature difference between the regional ambient temperature (T=T2 or T3, etc.) and the temperature average value Tv of other areas (such as area 242 or area 243, etc.) is greater than the first temperature value, the valve opening of the air volume regulating valve set on the connecting pipe between the air outlet and the air distribution device in other areas (such as area 242 or area 243, etc.) can also be adjusted.
[0061] In the manner of this embodiment, when the air conditioner is in the heating mode and the temperature difference is greater than the first temperature value, the temperature difference can be accurately and reliably adjusted to be within the target temperature range.
[0062] In one embodiment, adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the temperature average of each area may include: when the air conditioner is in heating mode and the temperature difference is less than the second temperature value, calculating the fourth opening according to the formula S4=a*k4*[(T-Tv) / Tv]*100%, wherein S4 refers to the fourth opening, a refers to the initial opening, k4 refers to the fourth preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; adjusting the valve opening of the air volume regulating valve from the initial opening to the fourth opening.
[0063] For example, when the air conditioner 200 is in heating mode, and the temperature difference ΔT1 between the regional ambient temperature (T=T1) of area 241 and the temperature average value Tv is less than the second temperature value, at this time, the fourth opening is first calculated according to the formula S4=a*k4*[(T-Tv) / Tv]*100%, wherein S4 refers to the fourth opening, a refers to the initial opening (at this time, a is specifically the initial opening of the air volume regulating valve 231 set on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in area 241), k4 refers to the fourth preset coefficient, T refers to the regional ambient temperature (at this time T=T1), Tv refers to the temperature average, and the initial opening is the pre-set valve opening.
[0064] Furthermore, the valve opening of the air volume regulating valve 231 provided on the connecting pipe 251 between the air outlet 221 and the air distribution device 210 in the area 241 is increased from the initial opening a to the fourth opening S4, and then the valve opening of the air volume regulating valve 231 after adjustment is equal to a+S4.
[0065] Similarly, when the air conditioner 200 is in heating mode, and the temperature difference between the regional ambient temperature (T=T2 or T3, etc.) and the temperature average value Tv of other areas (such as area 242 or area 243, etc.) is less than the second temperature value, the valve opening of the air volume regulating valve set on the connecting pipe between the air outlet and the air distribution device in other areas (such as area 242 or area 243, etc.) can also be adjusted.
[0066] In this embodiment, when the air conditioner is in the heating mode and the temperature difference is less than the second temperature value, the temperature difference can be accurately and reliably adjusted to be within the target temperature range.
[0067] Furthermore, in one embodiment, the valve opening of each air volume regulating valve is adjusted according to the temperature difference between the regional ambient temperature and the temperature average of each area, including: when the temperature difference is greater than the second temperature value and less than the first temperature value, the valve opening of the air volume regulating valve is maintained at the current opening.
[0068] For example, when the air conditioner 200 is in cooling mode, air supply mode or heating mode, and the temperature difference between the regional ambient temperature (T=T1) of area 241 and the temperature average value Tv is "ΔT1 is greater than the second temperature value and less than the first temperature value", the valve opening of the air volume regulating valve 231 is maintained at the current opening, and the current opening is the actual valve opening of the air volume regulating valve 231 when "ΔT1 is greater than the second temperature value and less than the first temperature value".
[0069] In one embodiment, in the aforementioned embodiments of the present application, the first temperature value, the second temperature value and the target temperature range are pre-specified.
[0070] Furthermore, in one embodiment, before adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature and the temperature average of each area, it can also include: adding the target adjustment value to the temperature difference average to obtain a first temperature value; subtracting the target adjustment value from the temperature difference average to obtain a second temperature value, and the target temperature range is from the first temperature value to the second temperature value.
[0071] Add the target adjustment value h to the average temperature difference Tv to obtain a first temperature value Tv+h. Subtract the target adjustment value h from the average temperature difference Tv to obtain a second temperature value Tv-h. The target temperature range is from Tv-h to Tv+h. Determining the first temperature value, the second temperature value, and the target temperature range in this manner for valve opening adjustment further effectively ensures that the temperature difference is accurately and reliably adjusted to within the target temperature range. The target adjustment value h is a pre-set value, for example, 1 or 2.
[0072] To facilitate better implementation of the air conditioning control method provided in the embodiment of the present application, the embodiment of the present application also provides an air conditioning control device based on the above air conditioning control method. The meanings of the terms herein are the same as those in the above air conditioning control method, and the specific implementation details can be referred to the description in the method embodiment. Figure 3 A block diagram of an air conditioning control device according to an embodiment of the present application is shown.
[0073] The air conditioner includes an air distribution device and a plurality of air outlets, wherein air volume regulating valves are respectively provided on the connecting pipes between the air distribution device and each of the air outlets, and the plurality of air outlets are respectively provided in a plurality of areas; Figure 3 As shown, the air conditioning control device 300 may include: a wind speed receiving module 310 which can be used to: receive the wind speed of each of the air outlets; an air outlet opening adjustment module 320 which can be used to: adjust the air outlet opening of each of the air outlets according to the wind speed of each of the air outlets, so that the wind speed of each of the air outlets is within a preset range; a temperature receiving module 330 which can be used to: receive the regional ambient temperature of each of the areas; a temperature processing module 340 which can be used to: calculate the temperature average of the regional ambient temperatures of the multiple areas; a valve opening adjustment module 350 which can be used to: adjust the valve opening of each of the air volume control valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average, so that the temperature difference is within the target temperature range.
[0074] In some embodiments of the present application, the valve opening adjustment module 350 can be used for: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is greater than the first temperature value, the first opening is calculated according to the formula S1=a*k1*[(T-Tv) / Tv]*100%, wherein S1 refers to the first opening, a refers to the initial opening, k1 refers to the first preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; the valve opening of the air volume regulating valve is adjusted from the initial opening to the first opening.
[0075] In some embodiments of the present application, the valve opening adjustment module 350 can be used for: when the air conditioner is in cooling mode or air supply mode, and the temperature difference is less than the second temperature value, the second opening is calculated according to the formula S2 = a*k2*[(T-Tv) / Tv]*100%, wherein S2 refers to the second opening, a refers to the initial opening, k2 refers to the second preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; the valve opening of the air volume regulating valve is reduced from the initial opening to the second opening.
[0076] In some embodiments of the present application, the valve opening adjustment module 350 can be used for: when the air conditioner is in heating mode and the temperature difference is greater than the first temperature value, the third opening is calculated according to the formula S3 = a*k3*[(T-Tv) / Tv]*100%, wherein S3 refers to the third opening, a refers to the initial opening, k3 refers to the third preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; the valve opening of the air volume regulating valve is reduced from the initial opening to the third opening.
[0077] In some embodiments of the present application, the valve opening adjustment module 350 can be used for: when the air conditioner is in heating mode and the temperature difference is less than the second temperature value, the fourth opening is calculated according to the formula S4=a*k4*[(T-Tv) / Tv]*100%, wherein S4 refers to the fourth opening, a refers to the initial opening, k4 refers to the fourth preset coefficient, T refers to the regional ambient temperature, and Tv refers to the temperature average; the valve opening of the air volume regulating valve is adjusted from the initial opening to the fourth opening.
[0078] In some embodiments of the present application, the valve opening adjustment module 350 may be configured to maintain the valve opening of the air volume control valve at a current opening when the temperature difference is greater than a second temperature value and less than a first temperature value.
[0079] In some embodiments of the present application, before adjusting the valve opening of each air volume regulating valve according to the temperature difference between the regional ambient temperature of each area and the temperature average value, the device also includes a range determination module, which is used to: add the target adjustment value to the temperature difference average value to obtain the first temperature value; subtract the target adjustment value from the temperature difference average value to obtain the second temperature value, and the target temperature range is from the first temperature value to the second temperature value.
[0080] It should be noted that, although several modules or units of the device for action execution are mentioned in the above detailed description, this division is not mandatory. In fact, according to the embodiment of the application, the features and functions of two or more modules or units described above can be concretized in one module or unit. On the contrary, the features and functions of one module or unit described above can be further divided into multiple modules or units to be concretized.
[0081] In addition, the embodiment of the present application also provides an air conditioner, such as Figure 4 As shown, Figure 4 A block diagram of an air conditioner according to an embodiment of the present application is shown, specifically:
[0082] The air conditioner may include one or more processing core processors 401, one or more computer readable storage media memories 402 and other components. Those skilled in the art will understand that Figure 4 The air conditioner structure shown in the figure does not constitute a limitation of the air conditioner, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.
[0083] Processor 401 is the control center of the air conditioner. It connects the various components of the computer device using various interfaces and circuits. By running or executing software programs and / or modules stored in memory 402 and accessing data stored in memory 402, it performs various computer functions and processes data. Optionally, processor 401 may include one or more processing cores. Preferably, processor 401 integrates an application processor and a modem processor. The application processor primarily handles the operating system, user interfaces, and application programs, while the modem processor primarily handles wireless communications. It is understood that the modem processor may not be integrated into processor 401.
[0084] The memory 402 can be used to store software programs and modules. The processor 401 executes various functional applications and data processing by running the software programs and modules stored in the memory 402. The memory 402 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application program required for at least one function (such as a sound playback function, an image playback function, etc.), etc.; the data storage area may store data created according to the use of the air conditioner, etc. In addition, the memory 402 may include a high-speed random access memory and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage device. Accordingly, the memory 402 may also include a memory controller to provide the processor 401 with access to the memory 402.
[0085] Although not shown, the air conditioner may further include an air distribution device, multiple air outlets, an air volume control valve, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 401 in the air conditioner can load the executable files corresponding to one or more computer program processes into the memory 402 according to the following instructions, and the processor 401 can execute the computer programs stored in the memory 402 to implement the various functions described in the aforementioned embodiments of the present application.
[0086] For example, the processor 401 can execute: receiving the wind speed of each of the air outlets; adjusting the air outlet opening of each of the air outlets according to the wind speed of each of the air outlets so that the wind speed of each of the air outlets is within a preset range; receiving the regional ambient temperature of each of the areas, and calculating the temperature average of the regional ambient temperatures of the multiple areas; adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the areas and the temperature average so that the temperature difference is within the target temperature range.
[0087] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by a computer program, or by controlling related hardware through a computer program. The computer program may be stored in a computer-readable storage medium and loaded and executed by a processor.
[0088] To this end, an embodiment of the present application further provides a storage medium storing a computer program, which can be loaded by a processor to execute the steps of any method provided in the embodiment of the present application.
[0089] The storage medium may be a computer-readable storage medium, and the storage medium may include a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
[0090] Since the computer program stored in the storage medium can execute the steps of any method provided in the embodiments of the present application, the beneficial effects that can be achieved by the method provided in the embodiments of the present application can be achieved. Please refer to the previous embodiments for details and will not be repeated here.
[0091] According to another embodiment of the present application, a computer program product or computer program includes computer instructions stored in a computer-readable storage medium. A processor of an air conditioner reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the air conditioner to perform the methods provided in the various optional implementations described in the embodiments of the present application.
[0092] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the embodiments disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of this application and include common knowledge or customary techniques in the art that are not disclosed herein.
[0093] It should be understood that the present application is not limited to the embodiments that have been described above and shown in the accompanying drawings, but various modifications and changes may be made without departing from the scope thereof.
Claims
1. An air conditioning control method, characterized in that: The air conditioner includes an air distribution device and a plurality of air outlets, an air volume regulating valve is respectively provided on the connecting pipes between the air distribution device and each of the air outlets, and the plurality of air outlets are respectively provided in a plurality of areas; the method includes: receiving wind speeds from the air outlets; According to the wind speed of each air outlet, the air outlet opening of each air outlet is adjusted respectively so that the wind speed of each air outlet is within a preset range; receiving a regional ambient temperature of each of the regions, and calculating a temperature average of the regional ambient temperatures of the plurality of regions; According to the temperature difference between the regional ambient temperature of each of the regions and the temperature average, the valve opening of each of the air volume control valves is adjusted so that the temperature difference is within a target temperature range.
2. The method according to claim 1, characterized in that The adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value includes: When the air conditioner is in cooling mode or air supply mode and the temperature difference is greater than a first temperature value, a first opening degree is calculated according to the formula S1=a*k1*[(T-Tv) / Tv]*100%, where S1 refers to the first opening degree, a refers to the initial opening degree, k1 refers to a first preset coefficient, T refers to the regional ambient temperature, and Tv refers to the average temperature; The valve opening of the air volume regulating valve is increased from the initial opening to the first opening.
3. The method according to claim 1, characterized in that The adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value includes: When the air conditioner is in cooling mode or air supply mode and the temperature difference is less than a second temperature value, a second opening degree is calculated according to the formula S2=a*k2*[(T-Tv) / Tv]*100%, where S2 refers to the second opening degree, a refers to the initial opening degree, k2 refers to the second preset coefficient, T refers to the ambient temperature of the area, and Tv refers to the average temperature. The valve opening of the air volume control valve is reduced from the initial opening to the second opening.
4. The method according to claim 1, wherein The adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value includes: When the air conditioner is in heating mode and the temperature difference is greater than the first temperature value, a third opening degree is calculated according to the formula S3=a*k3*[(T-Tv) / Tv]*100%, where S3 refers to the third opening degree, a refers to the initial opening degree, k3 refers to the third preset coefficient, T refers to the regional ambient temperature, and Tv refers to the average temperature; The valve opening of the air volume control valve is reduced from the initial opening by the third opening.
5. The method according to claim 1, characterized in that The adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value includes: When the air conditioner is in heating mode and the temperature difference is less than the second temperature value, a fourth opening degree is calculated according to the formula S4=a*k4*[(T-Tv) / Tv]*100%, where S4 is the fourth opening degree, a is the initial opening degree, k4 is the fourth preset coefficient, T is the ambient temperature of the area, and Tv is the average temperature. The valve opening of the air volume regulating valve is increased from the initial opening to the fourth opening.
6. The method according to claim 1, characterized in that The adjusting the valve opening of each of the air volume regulating valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value includes: When the temperature difference is greater than the second temperature value and less than the first temperature value, the valve opening of the air volume regulating valve is maintained at the current opening.
7. The method according to any one of claims 2 to 6, characterized in that Before adjusting the valve opening of each of the air volume control valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average, the method further includes: Adding the target adjustment value to the average temperature difference to obtain the first temperature value; The target adjustment value is subtracted from the average temperature difference to obtain the second temperature value, and the target temperature range is from the first temperature value to the second temperature value.
8. An air conditioning control device, characterized in that: The air conditioner includes an air distribution device and a plurality of air outlets, an air volume regulating valve is respectively provided on the connecting pipe between the air distribution device and each of the air outlets, and the plurality of air outlets are respectively provided in a plurality of areas; the device includes: A wind speed receiving module, configured to receive the wind speed of each of the air outlets; An air outlet opening adjustment module is used to adjust the air outlet opening of each air outlet according to the wind speed of each air outlet, so that the wind speed of each air outlet is within a preset range; A temperature receiving module is used to: receive the regional ambient temperature of each of the regions; A temperature processing module is used to calculate the average temperature of the regional ambient temperatures of the multiple regions; The valve opening adjustment module is used to adjust the valve opening of each of the air volume control valves according to the temperature difference between the regional ambient temperature of each of the regions and the temperature average value, so that the temperature difference is within the target temperature range.
9. A storage medium, characterized in that: A computer program is stored thereon, and when the computer program is executed by a processor of the air conditioner, the air conditioner executes the method according to any one of claims 1 to 7.
10. An air conditioner, characterized in that: include: a memory storing a computer program; A processor reads a computer program stored in a memory to execute the method according to any one of claims 1 to 7.
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